计算机科学
体感系统
感觉系统
盲文
人工智能
编码(社会科学)
神经科学
神经编码
计算机视觉
模式识别(心理学)
生物
数学
统计
操作系统
作者
Hongwei Tan,Quanzheng Tao,Ishan Pande,Sayani Majumdar,Fu Liu,Yifan Zhou,Per O. Å. Persson,Johanna Rosén,Sebastiaan van Dijken
标识
DOI:10.1038/s41467-020-15105-2
摘要
Abstract The integration and cooperation of mechanoreceptors, neurons and synapses in somatosensory systems enable humans to efficiently sense and process tactile information. Inspired by biological somatosensory systems, we report an optoelectronic spiking afferent nerve with neural coding, perceptual learning and memorizing capabilities to mimic tactile sensing and processing. Our system senses pressure by MXene-based sensors, converts pressure information to light pulses by coupling light-emitting diodes to analog-to-digital circuits, then integrates light pulses using a synaptic photomemristor. With neural coding, our spiking nerve is capable of not only detecting simultaneous pressure inputs, but also recognizing Morse code, braille, and object movement. Furthermore, with dimensionality-reduced feature extraction and learning, our system can recognize and memorize handwritten alphabets and words, providing a promising approach towards e-skin, neurorobotics and human-machine interaction technologies.
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